Under balanced operating conditions, consider the three-phase complex power delivered by the three-phase source to the three-phase load. Match the following expressions, those on the left to those on the right. (i) Realpower, P 3 ϕ (a) ( 3 V LL I L ) VA (ii) Reactive power, Q 3 ϕ (b) ( 3 V LL I L sin ϕ ) var (iii) Total apparent power, S 3 ϕ (c) ( 3 V LL I L cos ϕ ) W (iv) Complex power, S 3 ϕ (d) P 3 ϕ + j Q 3 ϕ Note that V LL is the rms line-to-line voltage, I L is the rms line current, and ϕ is the power-factor angle.
Under balanced operating conditions, consider the three-phase complex power delivered by the three-phase source to the three-phase load. Match the following expressions, those on the left to those on the right. (i) Realpower, P 3 ϕ (a) ( 3 V LL I L ) VA (ii) Reactive power, Q 3 ϕ (b) ( 3 V LL I L sin ϕ ) var (iii) Total apparent power, S 3 ϕ (c) ( 3 V LL I L cos ϕ ) W (iv) Complex power, S 3 ϕ (d) P 3 ϕ + j Q 3 ϕ Note that V LL is the rms line-to-line voltage, I L is the rms line current, and ϕ is the power-factor angle.
Solution Summary: The author explains the correct option for the type of power. The rmsline voltage supply by the generator is V_LL, and the angle difference between voltage and current.
Under balanced operating conditions, consider the three-phase complex power delivered by the three-phase source to the three-phase load. Match the following expressions, those on the left to those on the right.
(i) Realpower,
P
3
ϕ
(a)
(
3
V
LL
I
L
)
VA
(ii) Reactive power,
Q
3
ϕ
(b)
(
3
V
LL
I
L
sin
ϕ
)
var
(iii) Total apparent power,
S
3
ϕ
(c)
(
3
V
LL
I
L
cos
ϕ
)
W
(iv) Complex power,
S
3
ϕ
(d)
P
3
ϕ
+
j
Q
3
ϕ
Note that
V
LL
is the rms line-to-line voltage,
I
L
is the rms line current, and
ϕ
is the power-factor angle.
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